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ARF1 and ARF4 regulate recycling endosomal morphology and retrograde transport from endosomes to the Golgi apparatus

机译:ARF1和ARF4调节回收的内体形态和从内体向高尔基体的逆行运输

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摘要

Small GTPases of the ADP-ribosylation factor (ARF) family, except for ARF6, mainly localize to the Golgi apparatus, where they trigger formation of coated carrier vesicles. We recently showed that class I ARFs (ARF1 and ARF3) localize to recycling endosomes, as well as to the Golgi, and are redundantly required for recycling of endocytosed transferrin. On the other hand, the roles of class II ARFs (ARF4 and ARF5) are not yet fully understood, and the complementary or overlapping functions of class I and class II ARFs have been poorly characterized. In this study, we find that simultaneous depletion of ARF1 and ARF4 induces extensive tubulation of recycling endosomes. Moreover, the depletion of ARF1 and ARF4 inhibits retrograde transport of TGN38 and mannose-6-phosphate receptor from early/recycling endosomes to the trans-Golgi network (TGN) but does not affect the endocytic/recycling pathway of transferrin receptor or inhibit retrograde transport of CD4-furin from late endosomes to the TGN. These observations indicate that the ARF1+ARF4 and ARF1+ARF3 pairs are both required for integrity of recycling endosomes but are involved in distinct transport pathways: the former pair regulates retrograde transport from endosomes to the TGN, whereas the latter is required for the transferrin recycling pathway from endosomes to the plasma membrane.
机译:除ARF6外,ADP-核糖基化因子(ARF)家族的小GTPases主要定位于高尔基体,在那里它们触发了带涂层的载体囊泡的形成。我们最近显示,I类ARF(ARF1和ARF3)定位于回收的内体以及高尔基体,并且对于回收内吞的转铁蛋白是多余的。另一方面,II类ARF(ARF4和ARF5)的作用尚未完全理解,并且I类和II类ARF的互补或重叠功能表征不佳。在这项研究中,我们发现同时消耗ARF1和ARF4会引起循环内含体的大量输液。此外,ARF1和ARF4的耗竭抑制了TGN38和6磷酸甘露糖受体从早期/回收内体向逆转高尔基网络(TGN)的逆行转运,但不影响转铁蛋白受体的内吞/再循环途径或抑制逆行转运从晚期内体到TGN的CD4-弗林蛋白酶这些观察结果表明,ARF1 + ARF4和ARF1 + ARF3对都是回收内体完整性的必需条件,但它们参与不同的转运途径:前者对从内体到TGN的逆行转运进行调节,而后者则是转铁蛋白回收所必需的。从内体到质膜的途径

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